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Adsorption of Magenta Dye on PbO Doped MgZnO: Interpretation of Statistical Physics Parameters Using Double-Layer Models

This article reports the synthesis of PbO doped MgZnO (PbO@MgZnO) by a co-precipitation method, followed by an ultrasonication process. PbO@MgZnO demonstrates a significant adsorption capability toward Magenta Dye (MD). The greatest adsorption capability was optimized by varying parameters such as p...

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Autores principales: Altalhi, Tariq, Jethave, Ganesh, Fegade, Umesh, Mersal, Gaber A. M., Ibrahim, Mohamed M., Mahmoud, M.H.H., Kumeria, Tushar, Isai, Kalpesh A., Sonawane, Milind
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9564486/
https://www.ncbi.nlm.nih.gov/pubmed/36231501
http://dx.doi.org/10.3390/ijerph191912199
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author Altalhi, Tariq
Jethave, Ganesh
Fegade, Umesh
Mersal, Gaber A. M.
Ibrahim, Mohamed M.
Mahmoud, M.H.H.
Kumeria, Tushar
Isai, Kalpesh A.
Sonawane, Milind
author_facet Altalhi, Tariq
Jethave, Ganesh
Fegade, Umesh
Mersal, Gaber A. M.
Ibrahim, Mohamed M.
Mahmoud, M.H.H.
Kumeria, Tushar
Isai, Kalpesh A.
Sonawane, Milind
author_sort Altalhi, Tariq
collection PubMed
description This article reports the synthesis of PbO doped MgZnO (PbO@MgZnO) by a co-precipitation method, followed by an ultrasonication process. PbO@MgZnO demonstrates a significant adsorption capability toward Magenta Dye (MD). The greatest adsorption capability was optimized by varying parameters such as pH, MD concentration, and adsorbent dose. The kinetics study illustrates that the adsorption of MD on PbO@MgZnO follows the pseudo-second-order. The isotherm study revealed that Langmuir is best fitted for the adsorption, but with little difference in the R(2) value of Langmuir and Freundlich, the adsorption process cloud be single or multi-layer. The maximum adsorption capacity was found to be 333.33 mg/g. The negative ΔG refers to the spontaneity of MD adsorption on PbO@MgZnO. The steric parameters from statistical physics models also favor the multi-layer adsorption mechanism. As a function of solution temperature, the parameter n pattern has values of n = 0.395, 0.290, and 0.280 for 298, 308, and 318 K, respectively (i.e., all values were below 1). Therefore, horizontal molecule positioning and multiple locking mechanisms were implicated during interactions between MD and PbO@MgZnO active sites.
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spelling pubmed-95644862022-10-15 Adsorption of Magenta Dye on PbO Doped MgZnO: Interpretation of Statistical Physics Parameters Using Double-Layer Models Altalhi, Tariq Jethave, Ganesh Fegade, Umesh Mersal, Gaber A. M. Ibrahim, Mohamed M. Mahmoud, M.H.H. Kumeria, Tushar Isai, Kalpesh A. Sonawane, Milind Int J Environ Res Public Health Article This article reports the synthesis of PbO doped MgZnO (PbO@MgZnO) by a co-precipitation method, followed by an ultrasonication process. PbO@MgZnO demonstrates a significant adsorption capability toward Magenta Dye (MD). The greatest adsorption capability was optimized by varying parameters such as pH, MD concentration, and adsorbent dose. The kinetics study illustrates that the adsorption of MD on PbO@MgZnO follows the pseudo-second-order. The isotherm study revealed that Langmuir is best fitted for the adsorption, but with little difference in the R(2) value of Langmuir and Freundlich, the adsorption process cloud be single or multi-layer. The maximum adsorption capacity was found to be 333.33 mg/g. The negative ΔG refers to the spontaneity of MD adsorption on PbO@MgZnO. The steric parameters from statistical physics models also favor the multi-layer adsorption mechanism. As a function of solution temperature, the parameter n pattern has values of n = 0.395, 0.290, and 0.280 for 298, 308, and 318 K, respectively (i.e., all values were below 1). Therefore, horizontal molecule positioning and multiple locking mechanisms were implicated during interactions between MD and PbO@MgZnO active sites. MDPI 2022-09-26 /pmc/articles/PMC9564486/ /pubmed/36231501 http://dx.doi.org/10.3390/ijerph191912199 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Altalhi, Tariq
Jethave, Ganesh
Fegade, Umesh
Mersal, Gaber A. M.
Ibrahim, Mohamed M.
Mahmoud, M.H.H.
Kumeria, Tushar
Isai, Kalpesh A.
Sonawane, Milind
Adsorption of Magenta Dye on PbO Doped MgZnO: Interpretation of Statistical Physics Parameters Using Double-Layer Models
title Adsorption of Magenta Dye on PbO Doped MgZnO: Interpretation of Statistical Physics Parameters Using Double-Layer Models
title_full Adsorption of Magenta Dye on PbO Doped MgZnO: Interpretation of Statistical Physics Parameters Using Double-Layer Models
title_fullStr Adsorption of Magenta Dye on PbO Doped MgZnO: Interpretation of Statistical Physics Parameters Using Double-Layer Models
title_full_unstemmed Adsorption of Magenta Dye on PbO Doped MgZnO: Interpretation of Statistical Physics Parameters Using Double-Layer Models
title_short Adsorption of Magenta Dye on PbO Doped MgZnO: Interpretation of Statistical Physics Parameters Using Double-Layer Models
title_sort adsorption of magenta dye on pbo doped mgzno: interpretation of statistical physics parameters using double-layer models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9564486/
https://www.ncbi.nlm.nih.gov/pubmed/36231501
http://dx.doi.org/10.3390/ijerph191912199
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